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首页> 外文期刊>Journal of Aircraft >Improving the Aerodynamic Performance of Micro-Air-Vehicle-Scale Cycloidal Rotor: An Experimental Approach
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Improving the Aerodynamic Performance of Micro-Air-Vehicle-Scale Cycloidal Rotor: An Experimental Approach

机译:提高微型空车摆线转子的气动性能:一种实验方法

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摘要

Performance and flowfield measurements were conducted on a small-scale cyclorotor for application to a micro air vehicle. Detailed parametric studies were conducted to determine the effects of the number of blades, rotational speed, and blade pitching amplitude. The results showed that power loading and rotor efficiency increased when using more blades; this observation was found over a wide range of blade pitching amplitudes. The results also showed that operating the cyclorotor at higher pitching amplitudes resulted in improved performance, independently of the number of blades. A momentum balance performed using the flowfield measurements helped to quantify the vertical and sideward forces produced by the cyclorotor; these results correlated well with the force measurements made using load balance. Increasing the number of blades increased the inclination of the resultant thrust vector with respect to the vertical because of the increasing contribution of the sideward force. The profile drag coefficient of the blade sections computed using a momentum deficit approach correlated well with typical values at these low chord Reynolds numbers. Particle image velocimetry measurements made inside the cage of the cyclorotor showed that there are rotational flows that, when combined with the influence of the upper wake on the lower half of the rotor, explain the relatively low efficiency of the cyclorotor.
机译:性能和流场测量是在小型旋翼转子上进行的,以应用于微型飞行器。进行了详细的参数研究,以确定叶片数量,转速和叶片俯仰幅度的影响。结果表明,使用更多叶片时,功率负载和转子效率会增加;在广泛的叶片俯仰幅度范围内发现了该观察结果。结果还表明,以较高的俯仰幅度运行回旋转子可以提高性能,而与叶片数量无关。使用流场测量进行的动量平衡有助于量化旋翼转子产生的垂直力和侧向力。这些结果与使用负载平衡进行的力测量非常相关。由于侧向力的贡献增加,叶片数量的增加增加了合成推力矢量相对于垂直方向的倾斜度。使用动量不足方法计算的叶片截面轮廓阻力系数与这些低弦雷诺数下的典型值很好地相关。在旋翼转子笼内进行的颗粒图像测速测量表明,存在旋转流,当结合上尾流对转子下半部分的影响时,这说明了旋翼转子的效率相对较低。

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